No, because part of the definition of a compound is a requirement for lack of net electric charge, but any ion by must have a net electric charge.
Compounds that contain polyatomic ions include salts such as sodium nitrate (NaNO3) and calcium carbonate (CaCO3), as well as acids like sulfuric acid (H2SO4) and phosphoric acid (H3PO4). These compounds are formed when polyatomic ions combine with other ions or atoms to create a stable compound.
Polyatomic ions often occur in nature as part of salts and minerals. These ions can combine with other ions to form compounds with distinct chemical and physical properties. Additionally, polyatomic ions can be found in biological molecules such as DNA and proteins.
Compounds like sodium chloride (NaCl), methane (CH4), and water (H2O) do not contain polyatomic ions. These compounds are formed from simple combinations of individual elements without the presence of complex ions.
An ionic compound with polyatomic ions is formed through the attraction between positively charged metal ions and negatively charged polyatomic ions. Polyatomic ions are covalently bonded groups of atoms that have an overall charge, making them act as a single charged unit in the formation of ionic compounds.
Polyatomic ions can have both ionic and covalent bonds. Ionic bonds are formed between the positively and negatively charged ions within the polyatomic ion, while covalent bonds are formed by sharing electrons between the atoms within the polyatomic ion.
Compounds that contain polyatomic ions include salts such as sodium nitrate (NaNO3) and calcium carbonate (CaCO3), as well as acids like sulfuric acid (H2SO4) and phosphoric acid (H3PO4). These compounds are formed when polyatomic ions combine with other ions or atoms to create a stable compound.
Ions made up of more than one atom are called polyatomic ions.
If the compound contains a polyatomic ion, simply name the ion.
Polyatomic ions often occur in nature as part of salts and minerals. These ions can combine with other ions to form compounds with distinct chemical and physical properties. Additionally, polyatomic ions can be found in biological molecules such as DNA and proteins.
Compounds like sodium chloride (NaCl), methane (CH4), and water (H2O) do not contain polyatomic ions. These compounds are formed from simple combinations of individual elements without the presence of complex ions.
An ionic compound with polyatomic ions is formed through the attraction between positively charged metal ions and negatively charged polyatomic ions. Polyatomic ions are covalently bonded groups of atoms that have an overall charge, making them act as a single charged unit in the formation of ionic compounds.
Polyatomic ions can have both ionic and covalent bonds. Ionic bonds are formed between the positively and negatively charged ions within the polyatomic ion, while covalent bonds are formed by sharing electrons between the atoms within the polyatomic ion.
Compounds with both ionic and covalent bonds contain polyatomic ions. These ions consist of more than one atom covalently bonded together and carry a net charge, making them act as single units in ionic compounds.
Polyatomic ions such as sulfate (SO4^2-), nitrate (NO3-), and phosphate (PO4^3-) can form ionic bonds with other ions to create compounds. These polyatomic ions have a charge that allows them to bond with ions of opposite charge through electrostatic attraction.
Polyatomic ions.
Polyatomic ions can be obtained by combining multiple atoms of different elements that are covalently bonded together. These ions have an overall charge and behave as a single unit in chemical reactions. They are commonly found in compounds such as salts and acids.
No. Most polyatomic ions are anions.